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使用新型 CaO-MgO 杂化碳复合材料从水溶液中回收磷酸盐和溶解的有机物及其在磷回收中的可行性。

Recovery of phosphate and dissolved organic matter from aqueous solution using a novel CaO-MgO hybrid carbon composite and its feasibility in phosphorus recycling.

机构信息

College of Environment and Natural Resources, Northwest A&F University, Yangling 712100, China; School of Plant, Environmental and Soil Sciences, Louisiana State University Agricultural Center, 104 Sturgis Hall, Baton Rouge, LA 70803, USA.

School of Plant, Environmental and Soil Sciences, Louisiana State University Agricultural Center, 104 Sturgis Hall, Baton Rouge, LA 70803, USA.

出版信息

Sci Total Environ. 2018 Nov 15;642:526-536. doi: 10.1016/j.scitotenv.2018.06.092. Epub 2018 Jun 18.

Abstract

Metal oxide-Carbon composites have been developed tailoring towards specific functionalities for removing pollutants from contaminated environmental systems. In this study, we synthesized a novel CaO-MgO hybrid carbon composite for removal of phosphate and humate by co-pyrolysis of dolomite and sawdust at various temperatures. Increasing of pyrolysis temperature to 900 °C generated a composite rich in carbon, CaO and MgO particles. Phosphate and humate can be removed efficiently by the synthesized composite with the initial solution in the range of pH 3.0-11.0. The phosphate adsorption was best fitted by pseudo-second-order kinetic model, while the humate adsorption followed the pseudo-second-order and the intra-particle diffusion kinetic models. The maximum adsorption capabilities quantified by the Langmuir isotherm model were up to 207 mg phosphorus (or 621 mg phosphate) and 469 mg humate per one-gram composite used, respectively. Characterization of composites after adsorption revealed the contributions of phosphate crystal deposition and electrostatic attraction on the phosphate uptake and involvement of π - π interaction in the humate adsorption. The prepared composite has great potential for recovering phosphorus from wastewater, and the phosphate sorbed composite can be employed as a promising phosphorus slow-releasing fertilizer for improving plant growth.

摘要

金属氧化物-碳复合材料已被开发出来,以针对从污染环境系统中去除污染物的特定功能进行定制。在这项研究中,我们通过在不同温度下共热解白云石和木屑合成了一种新型的 CaO-MgO 混合碳复合材料,用于去除磷酸盐和腐殖酸。将热解温度升高到 900°C 会生成一种富含碳、CaO 和 MgO 颗粒的复合材料。合成的复合材料可以在 pH 值为 3.0-11.0 的初始溶液中有效去除磷酸盐和腐殖酸。磷酸盐吸附最符合准二级动力学模型,而腐殖酸吸附则符合准二级和内扩散动力学模型。通过 Langmuir 等温模型定量的最大吸附能力分别高达 207mg 磷(或 621mg 磷酸盐)和 469mg 腐殖酸每克复合材料。吸附后复合材料的表征表明,在磷酸盐的吸收过程中,磷酸盐晶体的沉积和静电引力起到了作用,而 π-π 相互作用则参与了腐殖酸的吸附。所制备的复合材料具有从废水中回收磷的巨大潜力,并且吸附了磷酸盐的复合材料可以作为一种有前途的磷缓释肥料,用于改善植物生长。

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